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Main Authors: Jones, Joann, Copi, Craig J., Starkman, Glenn D., Akrami, Yashar
Format: Preprint
Published: 2023
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Online Access:https://arxiv.org/abs/2310.12859
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author Jones, Joann
Copi, Craig J.
Starkman, Glenn D.
Akrami, Yashar
author_facet Jones, Joann
Copi, Craig J.
Starkman, Glenn D.
Akrami, Yashar
contents The standard cosmological model predicts statistically isotropic cosmic microwave background (CMB) fluctuations characterized by the CMB temperature coefficients $a_{\ell m}$ being independent Gaussian random variables with zero mean and with variance that depends only on $\ell$. However, several summary statistics of CMB isotropy have anomalous values, including: the low level of large-angle temperature correlations, $S_{1/2}$; the excess power in odd versus even low-$\ell$ multipoles, $R^{TT}$; the (low) variance of large-scale temperature anisotropies in the ecliptic north, but not the south, $σ^2_{16}$; and the alignment and planarity of the quadrupole and octopole of temperature, $S_{QO}$. Individually, their low $p$-values are weak evidence for violation of statistical isotropy. We study the tail values of these statistics and find very little correlation among them. We show that the joint probability of all four anomalies occurring by chance in $Λ$CDM is likely $\leq3\times10^{-8}$. We examine the balance in the impact of look-elsewhere effects and the existence of other anomalies on the significance of this result. We argue that non-Gaussianity alone is unlikely to account for the anomalies seen at the level of the angular power spectrum, $C_\ell$, and that they instead appear to require correlations between $a_{\ell m}$. Our results provide strong evidence for a violation of statistical isotropy, and we conclude that the anomalies should not be dismissed as flukes within $Λ$CDM.
format Preprint
id arxiv_https___arxiv_org_abs_2310_12859
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Strong Evidence Against a Statistically Isotropic Universe
Jones, Joann
Copi, Craig J.
Starkman, Glenn D.
Akrami, Yashar
Cosmology and Nongalactic Astrophysics
The standard cosmological model predicts statistically isotropic cosmic microwave background (CMB) fluctuations characterized by the CMB temperature coefficients $a_{\ell m}$ being independent Gaussian random variables with zero mean and with variance that depends only on $\ell$. However, several summary statistics of CMB isotropy have anomalous values, including: the low level of large-angle temperature correlations, $S_{1/2}$; the excess power in odd versus even low-$\ell$ multipoles, $R^{TT}$; the (low) variance of large-scale temperature anisotropies in the ecliptic north, but not the south, $σ^2_{16}$; and the alignment and planarity of the quadrupole and octopole of temperature, $S_{QO}$. Individually, their low $p$-values are weak evidence for violation of statistical isotropy. We study the tail values of these statistics and find very little correlation among them. We show that the joint probability of all four anomalies occurring by chance in $Λ$CDM is likely $\leq3\times10^{-8}$. We examine the balance in the impact of look-elsewhere effects and the existence of other anomalies on the significance of this result. We argue that non-Gaussianity alone is unlikely to account for the anomalies seen at the level of the angular power spectrum, $C_\ell$, and that they instead appear to require correlations between $a_{\ell m}$. Our results provide strong evidence for a violation of statistical isotropy, and we conclude that the anomalies should not be dismissed as flukes within $Λ$CDM.
title Strong Evidence Against a Statistically Isotropic Universe
topic Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2310.12859